IEEE MTT-V053-I10 (2005-10)
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010 - 01516304......Page 1 020 - 01516305......Page 3 Fig.€1. (a) Spectral components generated by nonlinearities up t......Page 4 A. Polynomial Device Models......Page 5 C. Accuracy Considerations......Page 6 B. Illustration of the Technique......Page 7 A. Test Setup......Page 8 D. Fit of $I_{\rm DS}\hbox{-}V_{\rm GS}\hbox{-}V_{\rm DS}$ Curre......Page 9 2) Vector Plot of IM3 of the Complete Amplifier: The phasor plot......Page 10 3) Optimizing the Matching Impedances: The detailed distortion a......Page 11 T. Närhi, Frequency-domain analysis of strongly nonlinear circui......Page 12 J. P. Aikio and T. Rahkonen, Detailed analysis of IMD in an LDMO......Page 13 Fig.€1. Complexity of the internal construction of 2.1-GHz 90-W......Page 14 A. Simulation of Packages Bonging-Wire Arrays......Page 15 B. Simulation of MOS Capacitors......Page 16 C. Coupling Between Bonding-Wire Arrays......Page 17 Fig.€11. Exploded view of the test fixture.......Page 18 Fig.€15. Plot of the phase of the simulated and measured transmi......Page 19 M. Guyonnet, R. Sommet, R. Quere, and G. Bouisse, Non-linear ele......Page 20 G. D. Vendelin, A. M. Pavio, and U. L. Rhode, Microwave Circuit......Page 21 II. M ODEL......Page 22 1) First Node is a Resonator: If the first node from the input i......Page 23 C. Extraction of an NRN......Page 24 IV. S YNTHESIS E XAMPLES......Page 25 V. D ISCUSSION AND E XPERIMENTAL V ALIDATION......Page 26 VI. C ONCLUSIONS......Page 27 S. Amari, Synthesis of cross-coupled resonator filters using an......Page 28 Fig.€1. Schematic block diagram of a multifrequency direct RF sa......Page 29 Fig.€2. Effects of a poor direct RF sampling frequency on signal......Page 30 Fig.€3. Portion of the sampling frequency constraint function $d......Page 31 Fig.€5. Prototype GPS L1/L2 dual-frequency direct RF sampling fr......Page 32 A. Reception of GPS C/A and P(Y) Codes on L1......Page 33 C. Relative Signal Amplitudes and the Received Power Spectral De......Page 34 E. Operation at Other Sampling Frequencies......Page 35 J. J. Spilker, Jr., GPS signal structure and theoretical perform......Page 36 I. I NTRODUCTION......Page 37 Fig.€1. Diagram of the proposed microwave signal generation syst......Page 38 B. Electrical Harmonic Suppression Analysis......Page 39 Fig.€6. Harmonic suppressions versus frequency of the electrical......Page 40 Fig.€7. Experimental setup for optical generation and transmissi......Page 41 Fig.€10. Spectra of the generated millimeter-wave signals. (a) 3......Page 42 A. J. Cooper, Fiber/radio for the provision of cordless/mobile t......Page 43 W. K. Marshall, B. Crosignani, and A. Yariv, Laser phase noise t......Page 44 II. B ILINEAR T RANSFORM......Page 45 III. SC-PML I MPLEMENTED U SING B ILINEAR T RANSFORM......Page 46 Fig. 2. (a) $\omega_{\rm eff}/\omega $ as a function of space-do......Page 47 IV. B ILINEAR T RANSFORM I MPLEMENTATION OF UPML......Page 48 Fig.€3. (a) and (b) Relative reflection errors as a function of......Page 49 B. $S$ -Parameters......Page 50 G. E. Ponchak and E. M. Tentzeris, Finite ground coplanar wavegu......Page 51 II. D ESIGN M ETHODOLOGY......Page 53 Fig.€2. (a) Simplified circuit diagram. (b) One coil layout stru......Page 54 C. Single-Coiled Transformer......Page 55 Fig.€7. Chip photograph of the Marchand-type transformer. The ch......Page 56 A. Broad-Band Spiral Transformer Mixer......Page 57 Fig.€13. Simulated and measured: (a) conversion losses, RF-to-IF......Page 58 Fig.€16. Chip photograph of the single-coiled transformer mixer.......Page 59 H.-C. Lu and T.-H. Chu, Port reduction methods for scattering ma......Page 60 II. G ATE -L INE A NALYSIS......Page 62 B. Design of the Following Constant- $K$ Section to Meet the Ter......Page 63 Fig. 6. $R$ values and $X_{L}$ values for satisfying the real pa......Page 64 Fig.€10. Comparison of input return loss (in decibels) between g......Page 65 C. Paoloni and S. D'Agostino, An approach to distributed amplifi......Page 66 Wong and T. Y. Thomas, Fundamentals of Distributed Amplification......Page 67 I. I NTRODUCTION......Page 68 II. OVM C ONCEPT......Page 69 B. $I/Q$ Interference and Noise......Page 70 C. Performance Potential......Page 71 IV. E XPERIMENTAL V ERIFICATIONS......Page 72 Fig.€9. 4-QAM: (a) signal constellation and (b) error vector mea......Page 73 Fig.€12. 16-QAM subcarrier modulation. (a) Microwave spectrum. (......Page 74 R.-S. Cheng, W.-L. Chen, and W.-S. Wang, Mach Zehnder modulators......Page 75 A. Modified Indirect Algorithm......Page 77 III. R ESULTS AND D ISCUSSION......Page 78 IV. C OMPLEX -P ERMITTIVITY M EASUREMENT......Page 79 TABLE III M EASURED R ELATIVE P ERMITTIVITY AND L OSS OF M ICROW......Page 80 D. Kajfez, Incremental frequency rule for computing the $Q$ -fac......Page 81 II. C IRCUIT M ODEL W ITH S PURIOUS R ESPONSE......Page 82 B. Spurious Response Below Passband $(f_{sp}< f_{0}\approx f_{1}......Page 83 IV. O VERSIZED A SYMMETRIC $H$ -P LANE C AVITY......Page 84 Fig. 5. Asymmetric $H$ -plane cavity with $J _{1} J _{2} J _{3}......Page 85 B. Fourth-Order Filter With Two Real TZs......Page 86 Fig.€11. Realized fifth-order $H$ -plane filter together with a......Page 87 I. Hunter, Theory and Design of Microwave Filters . London, U.K.......Page 88 II. C HAINED F UNCTIONS......Page 89 III. P OLYNOMIAL G ENERATION......Page 90 TABLE II (a) C HAINED -F UNCTION P OLYNOMIALS FOR $n_{T}={5}$ .......Page 91 Fig.€2. RL characteristics for sixth-order conventional Chebyshe......Page 92 D. Chained-Function Group-Delay Characteristics......Page 93 G. Chained-Function Loss Considerations......Page 94 TABLE III (a) C HAINED -F UNCTION F ILTER $q_{\min}$ FOR $n_{T}=......Page 95 TABLE IV (a) S UMMARY OF C HAINED -F UNCTION F ILTER P ROPERTIES......Page 96 VI. C ONCLUSION......Page 97 G. Matthaei, L. Young, and E. M. T. Jones, Microwave Filters, Im......Page 98 Fig.€1. Schematic of the resonant ring.......Page 99 Fig. 3. $H _{ z} ^{2}$ distribution at the waveguide wall. Posit......Page 100 Fig. 6. (a) Gain factor is 35: 1. (b) ${\hbox{Reflection}}< 1$ %......Page 101 R. B. Vaganov, Asymmetrical wave diffraction at a wide slot in a......Page 102 Fig.€1. (a) Variable-length post sectional view. (b) T-equivalen......Page 103 III. R ESULTS......Page 104 IV. L ENGTH A DJUSTMENT F ACTORS......Page 105 VI. C ONCLUSION......Page 106 C. Ting, Theoretical study of a cylindrical antenna with a hemis......Page 107 II. IL F UNCTION......Page 108 B. Third-Order Filters......Page 109 D. $Q_{T}$ Condition and the 3-dB BW......Page 110 Fig. 5. Root loci for $Z _{ oe}$ and $Z _{ oo}$ of the first and......Page 111 IV. I MPLEMENTATION U SING T APPED I NPUT /O UTPUT......Page 112 Fig.€11. (a) Theoretical, simulated, and measured responses of f......Page 113 L. Zhu, W. Menzel, K. Wu, and F. Boegelsack, Theoretical charact......Page 114 J. S. Wong, Microstrip tapped-line filter design, IEEE Trans. Mi......Page 115 Fig.€1. Rectangular dielectric line and shield.......Page 116 A. Basis Functions......Page 117 B. Mode Matching at the Boundary Between Regions......Page 118 C. Propagation Coefficient and Unknown Mode Coefficients of the......Page 119 C. Comparison of Methods Used for Calculation of the Rod Propaga......Page 120 F. Field Patterns of the First Few Modes to Propagate on the Shi......Page 121 V. C OMPARISON OF C ALCULATED AND M EASURED R ESULTS......Page 122 VI. C ONCLUSION......Page 123 J. Penny and G. Lindfield, Numerical Methods Using Matlab . Sydn......Page 124 II. S PIRAL I NDUCTORS IN WLP......Page 125 B. $Q$ -Factor Evaluation by Conventional Method 2......Page 126 III. A CCURATE M EASUREMENT M ETHOD OF A SYMMETRIC S TRUCTURE OF......Page 127 Fig.€12. Port-1 side measured $Q$ factor derived from convention......Page 128 IV. R ESULTS AND D ISCUSSION......Page 129 Fig.€20. Comparison of measured $Q$ factors derived from novel m......Page 130 C. P. Yue and S. S. Wong, On-chip spiral inductors with patterne......Page 131 A. Model for the WG-Mode Resonator......Page 132 Fig. 4. $WGH_{16,0,0}$ mode doublet for a 50-mm-diameter 30-mm-t......Page 133 Fig.€7. Full TLR model for the WG-mode resonator.......Page 134 IV. E XPERIMENTAL V ERIFICATION......Page 135 V. C ONCLUSION......Page 136 M. Tobar, E. Ivanov, P. Blondy, D. Cros, and P. Guillon, High- $......Page 137 A. Overhead PLC Lines......Page 138 B. Underground PLC Lines......Page 140 Fig.€5. Per-unit-length impedance of PLC with 0.1 m underground.......Page 142 Fig.€9. Magnetic field of PLC with 0.1 m above the ground and un......Page 143 W. Q. Luo, S. Y. Tan, and B. T. Tan, Radiated emission model for......Page 144 II. O PTIMIZATION A PPROACH......Page 146 Fig.€3. $\circ$: measured data. $+$: computed from equivalent ne......Page 147 III. L EAST S QUARES A PPROACH, S INGLE R ESONANCE......Page 148 IV. L EAST S QUARES A PPROACH, D UAL R ESONANCE......Page 149 TABLE II N ETWORK E LEMENT V ALUES, F IG .€1(b)......Page 150 B. Reflection-Type $Q$ -Factor Measurement......Page 151 R. K. Mongia, A. Ittipibon, and M. Cuhaci, Measurement of radiat......Page 152 Fig.€1. Configurations of: (a) a conventional class-F active ant......Page 153 B. Highly Functional Antenna Design for High PAE......Page 154 Fig.€3. (a) Top- and (b) side-view (c) lumped-element equivalent......Page 155 Fig.€5. (a) Load pull simulation for the maximum PAE of the powe......Page 156 Fig. 6. Simulated PAE and $P _{ t}$ for the variations of: (a) $......Page 157 III. E XPERIMENTAL R ESULTS AND D ISCUSSION......Page 158 Fig.€12. Measured radiation patterns at the fundamental and harm......Page 159 H. G. Akhavan and D. Mirshekar-Syahkal, A simple technique for e......Page 160 C. A. Balanis, Antenna Theory: Analysis and Design, 2nd ed. New......Page 161 II. I DEAL P ARAELECTRIC N ONLINEARITY......Page 162 III. A SYMPTOTIC A PPROXIMATIONS......Page 163 V. S MALL C APACITORS AND F RINGING E FFECTS......Page 164 Fig.€5. Interfacial capacitance in thin-film varactors contribut......Page 165 VIII. C ONCLUSION......Page 166 T. R. Taylor, P. J. Hansen, B. Acikel, N. Pervez, R. A. York, S.......Page 167 I. I NTRODUCTION......Page 168 A. Design of the Load Transmission-Line Segments......Page 169 Fig.€2. Dependence of the power transmission response of the tra......Page 170 Fig.€3. Control of the transversal filtering section performance......Page 171 Fig.€5. Simulated power transmission response of the ideal desig......Page 172 B. High-Selective Microwave Active Bandpass Filter......Page 173 Fig.€11. Simulated and measured power reflection and transmissio......Page 174 G. Matthaei, L. Young, and E. M. T. Jones, Microwave Filters, Im......Page 175 A. SSL......Page 177 III. G ENERAL F ILTER D ESIGN......Page 178 TABLE II G EOMETRICAL D IMENSIONS OF THE F ILTER A CCORDING TO F......Page 179 IV. L OW -P ASS F ILTER......Page 180 VI. H IGH -P ASS F ILTER......Page 181 Fig.€18. Top and bottom side layouts of an SSL diplexer consisti......Page 182 W. Menzel and M. Berry, Quasi-lumped suspended stripline filters......Page 183 A. Hydrodynamic Small-Signal Model......Page 185 III. O PTICAL D ESIGN......Page 187 Fig.€2. Output current of input open-ended TWPD calculated using......Page 188 S. E. Laux, Techniques for small-signal analysis of semiconducto......Page 189 M. Govindarajan and S. R. Forrest, Transit-time broad-banding of......Page 190 Fig.€2. Two-antenna configuration for WLAN and UWB coexistence.......Page 191 Fig.€5. Representation scheme in the proposed algorithm. (a) A t......Page 192 Fig.€7. Convergence of the GA.......Page 193 A. Dual-Band Characteristic......Page 194 B. Isolation Issues Between WLAN and UWB Ports......Page 195 J.-W. Sheen, LTCC-MLC duplexer for DCS, IEEE Trans. Microw. Theo......Page 196 G. M. Rebeiz, RF MEMS Theory, Design, and Technology . New York:......Page 197 I. I NTRODUCTION......Page 198 A. Error-Function Selection......Page 199 Fig.€2. Flowchart illustrating the GA procedure.......Page 200 A. Computer-Generated $S$ -Parameters......Page 201 Fig. 5. Magnitude of $S_{11}$ and $S_{21}$ for single-layer Bake......Page 202 TABLE VI E XTRACTED P ERMITTIVITY AND E RROR FOR N ANOMATERIAL......Page 203 D. Three-Layer Measurements......Page 204 J. J. More, The Levenberg Marquardt algorithm: Implementation an......Page 205 8510C Network Analyzer System Operating and Programming Manual,......Page 206 Website......Page 207 310 - [email protected] 208
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